Ishii Daichi, Sato Shiho, Fujie Hiromichi
Department of Mechanical Systems Engineering, Graduate School of Systems Design, Tokyo Metropolitan University, 1-1 Minami-Osawa, Hachioji-shi, Tokyo, 192-0397, Japan.
Ann Biomed Eng. 2025 Mar;53(3):588-596. doi: 10.1007/s10439-024-03654-2. Epub 2024 Nov 27.
This study determined the insertion angle at the porcine anterior cruciate ligament (ACL) enthesis under joint loading to provide information on the structure and mechanical function of the enthesis. Ten intact porcine knee joints were harvested, and an anterior tibial load was applied using a robotic testing system. After dissecting a portion of the ACL enthesis along ligament fibers, the remaining enthesis was imaged using a digital microscope while reproducing the three-dimensional intact knee motion. Fiber orientation angles (FOAs) in the enthesis region (0-300 µm from the ligament-bone boundary) and the ligament region (500-2000 µm from the ligament-bone boundary) were analyzed in the femoral and tibial entheses of the anteromedial bundle (AMB) of the ACL under loading. On the femoral side, the FOA in the enthesis region was significantly higher than that in the ligament region by approximately 10 degrees under loading (n = 5, p < 0.05 in paired t-test). In contrast, the FOAs in the enthesis and ligament regions on the tibial side were nearly equal under loading, with no significant difference (n = 5, p > 0.15 in paired t-test). Histological examination indicated that uncalcified fibrocartilage (UF) was abundant in the enthesis region of the AMB femoral enthesis while the UF was not observed in the enthesis region of the AMB tibial enthesis. Thus, the current data suggest that the regional dependence and independence in FOA are caused by the presence or absence of UF and contributes to a moderate and subtle load-transduction in the ACL enthesis.
本研究确定了猪前交叉韧带(ACL)起止点在关节负荷下的插入角度,以提供有关起止点结构和力学功能的信息。收集了10个完整的猪膝关节,并使用机器人测试系统施加胫骨前负荷。沿韧带纤维解剖部分ACL起止点后,在重现完整膝关节三维运动的同时,使用数字显微镜对剩余的起止点进行成像。分析了ACL前内侧束(AMB)在股骨和胫骨起止点的起止点区域(距韧带-骨边界0-300μm)和韧带区域(距韧带-骨边界500-2000μm)在负荷下的纤维取向角(FOA)。在股骨侧,负荷下起止点区域的FOA比韧带区域的FOA显著高约10度(n = 5,配对t检验中p < 0.05)。相比之下,负荷下胫骨侧起止点和韧带区域的FOA几乎相等,无显著差异(n = 5,配对t检验中p > 0.15)。组织学检查表明,未钙化纤维软骨(UF)在AMB股骨起止点的起止点区域丰富,而在AMB胫骨起止点的起止点区域未观察到UF。因此,目前的数据表明,FOA的区域依赖性和独立性是由UF的存在与否引起的,并有助于ACL起止点进行适度而微妙的负荷传导。